Finesse is a critical parameter for describing the characteristics of an optical enhancement cavity(OEC). This paper first presents a review of finesse measurement techniques, including a comparative analysis of the a...Finesse is a critical parameter for describing the characteristics of an optical enhancement cavity(OEC). This paper first presents a review of finesse measurement techniques, including a comparative analysis of the advantages, disadvantages, and potential limitations of several main methods from both theoretical and practical perspectives. A variant of the existing method called the free spectral range(FSR) modulation method is proposed and compared with three other finesse measurement methods, i.e., the fast-switching cavity ring-down(CRD) method, the rapidly swept-frequency(SF) CRD method, and the ringing effect method. A high-power OEC platform with a high finesse of approximately 16000 is built and measured with the four methods. The performance of these methods is compared, and the results show that the FSR modulation method and the fast-switching CRD method are more suitable and accurate than the other two methods for high-finesse OEC measurements. The CRD method and the ringing effect method can be implemented in open loop using simple equipment and are easy to perform. Additionally, recommendations for selecting finesse measurement methods under different conditions are proposed, which benefit the development of OEC and its applications.展开更多
移动自组网(Mobile Ad Hoc Networks,MANETs)所面临的Flooding攻击是一种严重DOS攻击行为。然而,现有的针对Flooding攻击的防范技术因不能较好地适应MANETs特性(如有限资源、动态拓扑等)而难以在MANETs网络性能和网络安全之间保持平衡...移动自组网(Mobile Ad Hoc Networks,MANETs)所面临的Flooding攻击是一种严重DOS攻击行为。然而,现有的针对Flooding攻击的防范技术因不能较好地适应MANETs特性(如有限资源、动态拓扑等)而难以在MANETs网络性能和网络安全之间保持平衡。通过分析移动自组网的时空动态性、网络性能评估与Flooding安全威胁之间的内在关系,提出了一种基于性能评估的Flooding攻击防御技术。通过构建可量化的MANETs安全威胁、防御收益与代价的评估指标体系,实现了基于网络安全和性能平衡的防御及其性能优化方法。仿真实验结果表明,所提出的防御技术可有效地弥补现有移动自组网安全技术存在的一些缺陷,因而能够满足移动自组网特性且适合于实际应用。展开更多
基金Project supported by National Key Research and Development Program of China (Grant No.2022YFA1603403)。
文摘Finesse is a critical parameter for describing the characteristics of an optical enhancement cavity(OEC). This paper first presents a review of finesse measurement techniques, including a comparative analysis of the advantages, disadvantages, and potential limitations of several main methods from both theoretical and practical perspectives. A variant of the existing method called the free spectral range(FSR) modulation method is proposed and compared with three other finesse measurement methods, i.e., the fast-switching cavity ring-down(CRD) method, the rapidly swept-frequency(SF) CRD method, and the ringing effect method. A high-power OEC platform with a high finesse of approximately 16000 is built and measured with the four methods. The performance of these methods is compared, and the results show that the FSR modulation method and the fast-switching CRD method are more suitable and accurate than the other two methods for high-finesse OEC measurements. The CRD method and the ringing effect method can be implemented in open loop using simple equipment and are easy to perform. Additionally, recommendations for selecting finesse measurement methods under different conditions are proposed, which benefit the development of OEC and its applications.
文摘移动自组网(Mobile Ad Hoc Networks,MANETs)所面临的Flooding攻击是一种严重DOS攻击行为。然而,现有的针对Flooding攻击的防范技术因不能较好地适应MANETs特性(如有限资源、动态拓扑等)而难以在MANETs网络性能和网络安全之间保持平衡。通过分析移动自组网的时空动态性、网络性能评估与Flooding安全威胁之间的内在关系,提出了一种基于性能评估的Flooding攻击防御技术。通过构建可量化的MANETs安全威胁、防御收益与代价的评估指标体系,实现了基于网络安全和性能平衡的防御及其性能优化方法。仿真实验结果表明,所提出的防御技术可有效地弥补现有移动自组网安全技术存在的一些缺陷,因而能够满足移动自组网特性且适合于实际应用。
基金supported by National Natural Science Foundation of China(No.22075063,No.U1932205,No.22102041)Fundamental Research Funds for the Central Universities(FRFCU5710092520)+4 种基金Chinesisch-Deutschen Zentrum für Wissenschaftsf?rderung(M-0281)Natural Science Funds of Heilong jiang Province(No.ZD2019B001)Heilongjiang Touyan Team(HITTY-20190033)"Young Scientist Studio"Chongqing Research Institute of HIT。
基金supported by National Natural Science Foundation of China (No. 22075063, No. U1932205, No. 22102041)Fundamental Research Funds for the Central Universities (FRFCU5710092520)+4 种基金Chinesisch-Deutschen Zentrum für Wissenschaftsf?rderung (M0281)Natural Science Funds of Heilongjiang Province (No. ZD2019B001)Heilongjiang Touyan Team (HITTY-20190033)the Natural Science Fund for Distinguished Young Scholars of Chongqing ( cstc2021jcyj-jqX0003)“Young Scientist Studio” and Chongqing Research Institute of HIT。